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EMIR AND OSIRIS INSTRUMENTS: COMMON DATA ACQUISITION SOFTWARE ARCHITECTURE

机译:EMIR和OSIRIS仪器:通用数据采集软件体系结构

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摘要

OSIRIS (Optical System for Imaging and low/intermediate-Resolution Integrated Spectroscopy) and EMIR (InfraRed MultiObject Spectrograph) are instruments designed to obtain images and low resolution spectra of astronomical objects in the optical and infrared domains. They will be installed on Day One and Day Two, respectively, in the Nasmyth focus of the 10-meter Spanish GTC Telescope. This paper describes the architecture of the Data Acquisition System (DAS), emphasizing the functional and quality attributes. The DAS is a component oriented, concurrent, distributed and real time system which coordinates several activities: acquisition of images coming from the detectors controller, tagging, and data communication with the required telescope system resources. This architecture will minimize efforts in the development of future DAS. Common aspects, such as the data process flow, concurrency, asynchronous/synchronous communication, memory management, and exception handling, among others, are managed by the proposed architecture. This system also allows a straightforward inclusion of variable parts, such as dedicated hardware and different acquisition modes. The DAS has been developed using an object oriented approach and uses the Adaptive Communication Environment (ACE) to be operating system independent.
机译:OSIRIS(成像和低/中分辨率集成光谱的光学系统)和EMIR(红外多目标光谱仪)是用于获取光学和红外域中天文物体的图像和低分辨率光谱的仪器。它们将分别安装在10米西班牙GTC望远镜的Nasmyth焦点的第一天和第二天。本文介绍了数据采集系统(DAS)的体系结构,着重介绍了功能和质量属性。 DAS是面向组件的,并发,分布式和实时系统,它协调多种活动:从探测器控制器获取图像,标记以及与所需望远镜系统资源的数据通信。这种体系结构将最大程度地减少未来DAS的开发工作。共同的方面,如数据处理流程,并发性,异步/同步通信,内存管理和异常处理等,均由建议的体系结构管理。该系统还允许直接包含可变部分,例如专用硬件和不同的采集模式。 DAS已使用面向对象的方法开发,并使用自适应通信环境(ACE)来独立于操作系统。

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